Espandere la produzione del grafene

As it enters its final phase, the NanoMaster Project is reporting exciting results related to graphene and expanded graphite production and the development of novel nanocomposite intermediates.
Over the last eighteen months, the project team have focused on optimising and up-scaling the processes for graphene and expanded graphite production and their subsequent compounding with a range of thermoplastics, in order to demonstrate industrial viability and to deliver sufficient quantities of nanocomposite intermediates for use in the final stages of the project.
As a result of this work, the project team is pleased to report that production of graphene and few-layer graphene has been scaled from 50g at the end of the first year to 2.5kg currently. Production of expanded graphite and nano-graphite has also been optimised and up-scaled. A densification process was studied to help improve the feeding of these graphite and nano-graphite powders into compounding extruders and to reduce transportation volumes.
Alongside this, optimum lab-scale compounding extrusion parameters have been determined and simulations carried out, subsequently leading to the implementation of pilot-scale production.
A further important activity during stage two was the evaluation of competitor products and comparison with the NanoMaster materials, as Ben Hargreaves, Senior Project manager at NetComposites, the projects lead partner, explains: “We evaluated the NanoMaster materials against a number of commercially available alternatives, utilising a range of characterisation and analysis techniques. Of those evaluated, the NanoMaster materials were found to be highest quality (in terms of number of layers, presence of defects and uniformity of particle diameter) and able to impart greatest property enhancements to a range of polymers.”
Nanoparticle exposure monitoring has been carried out throughout the development work and detailed reports on the findings have been prepared. Building upon this information (and in combination with an on-going review of hazard literature), guidance on industrial Implementation of the newly developed graphenes, graphites and nanocomposites has been drawn up.
During the final eighteen months of the project, the team will continue to optimise nanocomposite processing parameters – both for conventional processes such as injection moulding and film extrusion; and for additive manufacturing processes, including selective laser sintering and fused deposition modelling.
The project is led by NetComposites, UK, and involves 12 other project partners: Philips Consumer Lifestyle, Holland, Imerys Graphite and Carbon, Switzerland, Röchling Automotive, Italy, Asociación de Investigación de Materiales Plásticos y Conexas, Spain, Aero Engine Controls, UK, Teknologisk Institut, Denmark, Promolding, Holland, Avanzare Innovacion Tecnologica, Spain, Master Build Prototype, France, The Institute of Occupational Medicine, UK, Create It Real Aps, Denmark, and LATI Industria Termoplastici, Italy.
The research leading to these results has received funding from the European Community’s Seventh Framework Programme FP7/2007-2013 under grant agreement n° 285718.

Fonte: NanoMaster Project


Leggi anche

Il peso dei satelliti spaziali può rendere costoso il raggiungimento dell’orbita terrestre bassa (LEO). Se ne sono rese conto le aziende australiane che hanno dovuto fare i conti con i fornitori di lancio che fatturano i carichi utili al chilogrammo. È emersa quindi la necessità di utilizzare strutture più leggere, ma al tempo stesso robuste, per resistere in ambienti spaziali con temperature estreme….

Leggi tutto…

The structural acrylic adhesives ARALDITE®2080 and ARALDITE®2081 from Huntsman have been developed to ensure high strength and lower flammability than traditional methyl methacrylate-based products. For most applications, they require minimal surface preparation and ensure good adhesion performance on different substrates (plastic, composites and metal) along with rapid curing at room temperature….

Leggi tutto…

Un gruppo di ricercatori dell’Università del Queensland del Sud, sotto la guida del dottor Wahid Ferdous, sta studiando come sostituire le traverse ferroviarie in legno per i ponti con un nuovo materiale costituito da fibre composite e materiali di scarto. Il governo dello stato del Queensland e il produttore di traverse in cemento Austrak hanno finanziato il progetto attraverso una borsa di ricerca per l’industria….

Leggi tutto…

Analizzando le proprietà dei nuovi ritardanti di fiamma per materiali compositi, i ricercatori del laboratorio Advanced Fibers dell’Empa, centro svizzero per lo studio dei materiali avanzati, sotto la guida di Sabyasachi Gaan, hanno elaborato una tecnica che permette di rendere recuperabili le resine epossidiche, il cui limite di riutilizzo è intrinseco alla natura di materiali termoindurenti, ossia polimeri altamente reticolati che, una volta induriti, non possono essere sottoposti nuovamente a fusione senza carbonizzarsi….

Leggi tutto…

Refitech Composite Solutions innova i propri processi produttivi, installando una macchina CNC a cinque assi per la finitura di componenti compositi, che si aggiunge ai sistemi già operativi a tre assi. La nuova strumentazione consentirà di eseguire la lavorazione di forme 3D ancora più complesse in modo completamente automatico, ad alta velocità, garantendo una qualità elevata e una riproducibilità perfetta, in vista dei volumi di serie….

Leggi tutto…